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Diabetes and neurodegeneration in cognitively unimpaired older adults: implications for cognition

Amaryllis A Tsiknia, Victoria R Tennant, Marylan Davison, Rajesh Nandy, Matthew Borzage, Alexandra L Clark, Arthur W Toga, Kristine Yaffe, Sid O’Bryant, Meredith N Braskie

Brain · 2026

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Abstract Type 2 diabetes mellitus is associated with cognitive impairment and greater Alzheimer’s disease risk, with cross-sectional studies suggesting that this is driven by neurodegeneration and vascular changes. Longitudinal studies, however, report similar rates of total brain atrophy over time in diabetic and non-diabetic adults. We recently showed that diabetes-related neurodegeneration in cognitively unimpaired adults is regional and may not be evident in longitudinal studies of global brain atrophy. The mechanisms driving diabetes-related neurodegeneration are unknown; glycemic control may play an important role but the relative influence of Alzheimer’s and cerebrovascular pathology is unclear. Here, we longitudinally examined regional patterns of cortical thinning associated with diabetes and glycemic control over nearly 3 years. We controlled for Alzheimer's disease neuropathology and white matter hyperintensity burden. We also examined whether subsequent changes in hemoglobin A1c (HbA1c) levels correlated with rates of cortical thinning in diabetes-associated regions and tested whether faster cortical thinning in diabetes-relevant regions mediated a relationship between diabetes and decline in cognitive performance. Among 1,298 cognitively unimpaired participants (mean age=65.0 years, 305 diabetic, 869 female) from the Health and Aging Brain Study-Health Disparities cohort who completed baseline and follow-up MRI scans, we used linear mixed-effects models to examine the relationship between diabetes and cortical thickness changes across 34 brain regions, controlling for socioeconomic factors and comorbidities. We further adjusted for amyloid-PET, tau-PET, white matter hyperintensities, and APOE ε4 carrier status. We also examined associations between baseline and longitudinal HbA1c levels and cortical thinning rates in diabetes-related regions in the whole sample and separately in diabetic and non-diabetic participants. P-values were corrected using the false discovery rate method. Path analysis tested whether diabetes-related cortical thinning mediated the relationship between diabetes and decline in cognitive performance. Diabetic participants exhibited faster cortical thinning in seven frontal, parietal, and occipital regions (-0.060≤βs≤-0.046, corrected Ps

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Autor:innen
Amaryllis A Tsiknia, Victoria R Tennant, Marylan Davison, Rajesh Nandy, Matthew Borzage, Alexandra L Clark, Arthur W Toga, Kristine Yaffe, Sid O’Bryant, Meredith N Braskie
Quelle
Brain
Publikation
2026-01-01
Band / Ausgabe
Nicht angegeben
Seiten
Nicht angegeben
ISSN / ISBN
0006-8950, 1460-2156
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Zitierfähiger Nachweis

Amaryllis A Tsiknia, Victoria R Tennant, Marylan Davison, Rajesh Nandy, Matthew Borzage, Alexandra L Clark, Arthur W Toga, Kristine Yaffe, Sid O’Bryant, Meredith N Braskie (2026). Diabetes and neurodegeneration in cognitively unimpaired older adults: implications for cognition. Brain. https://doi.org/10.1093/brain/awag287
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